If a thin uniform wire of length X having linear mass density D is bent zero into a circular loop (as shown in the figure). What will be the moment of inertia of the loop about axis AB ?
3 L2D/ 16
2 L2D/ 3
3 L3D/ 8
8 L2D/ 13
A solid sphere rolls without slipping and presses a spring of spring constant k as shown in figure. Then, the compression in the spring will be
A weightless thread can bear tension upto 37 N. A stone of mass 500 g is tied to it and revolved in a circular path of radius 4 m in a vertical plane. If g = 10 ms-2, then the maximum angular velocity of the stone will be
2 rad s-1
4 rad s-1
8 rad s-1
16 rad s-1
A force-time graph for a linear motion of a body is shown in the figure. The change in linear momentum between O and 7 s is
2 N-s
3 N-s
4 N-s
5 N-s
Two blocks of equal masses m are released from the top of a smooth fixed wedge as shown in the figure. The acceleration of the centre of mass of the two blocks is
g
The moment of inertia of a uniform circular disc of radius R and mass M about an axis passing from the edge ofthe disc and normal to the disc is
MR2
C.
The moment of inertia of uniform circular disc about an axis through its centre and normal to its plane
ICG =
According to theorem of parallel axis, the moment of inertia of the uniform circular disc about an axis passing from the edge of the disc and normal to the disc.
I = ICG + MR2
=
A motor is rotating at a constant angular velocity of 500 rpm. The angular displacement per second is
If the length of the second's hand in a stop-clock is 3 cm, the angular velocity and linear velocity of the tip is
0.2047 rad/s , 0.0314 ms-1
0.2547 rad/s , 0.314 ms-1
0.1472 rad/s , 0.06314 ms-1
0.1047 rad/s , 0.00314 ms-1
Three identical spheres, each ofmass 1 kg are kept as shown in figure below, touching each other, with their centres on a straight line. If their centres are marked P, Q, R respectively, the distance of centre of mass of the system from P is